All About PC Coolants In Custom Liquid Cooled PCs
All About PC Coolants In Custom Liquid Cooled PCs
Welcome back to the Component Series. We hope to help builders both new and old to understand their options when it comes to the components in their custom water loops. Todays entry is all about PC coolants.
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Weve talked in depth about how your water cooling system works. Weve covered pumps that keep things moving, water blocks that draw the heat out of your hard-working components, and radiators that move that heat to the outside air. Inside all of those is the lifeblood of your system your coolant.
The coolant in your system is what actually absorbs the heat from your PC and releases it to the outside air. When your PC is running, its continually going through a heat-and-cool cycle that make everything else work.
Without good coolant, even the best water-cooling setup wont be able to perform to its potential.
Clear coolant can really help show off the other colors in your system.
The Options
Before we look at your options for a good coolant, we should look at options that shouldnt even be considered. PC water cooling is a long history of experimentation, largely by simple users like you and I. People have tried whiskey, windshield wiper fluid and acetone to name a few.
Just about all of these are obviously not a good choice for your water cooling system. If you want to experiment by all means go for it. Innovations are discovered through trial and error. This article is about the more mundane use of coolants in the everyday liquid-cooled PC, so were going to stick to the basics.
Maybe well get into fluid experimentation in another post
I had planned to dive into the science behind a good coolant but that is a very deep rabbit hole. In an effort to keep things clear and easy, lets look at the two most important factors in choosing a coolant: thermal conductivity and specific heat.
We covered thermal conductivity in our Thermal Grizzly Buyers Guide. Its simply a measurement of how efficiently heat can move through a given material, measured in watts per meter-Kelvin, or k value. The higher the k value of a given substance, the more efficiently it will transfer heat.
Specific heat is also called heat capacity. Its the amount of heat required to raise the temperature of a specific mass of material by one degree Celsius, measured in calories per gram per Celsius degree, thankfully abbreviated to cal/gmK. The higher a materials specific heat, the more heat it can absorb without changing its temperature. Materials with higher specific heat numbers make better coolants.
With those two factors in mind, lets see how a few options stack up:
This table shows the k values of various fluids that have been used in PC liquid cooling. Weve already talked about the difference between water and air in our post Why Water Cool Your PC. Still, its interesting to see how much better some materials transfer heat than others.
Looking at the table, its clear that pure water is the winner in thermal conductivity. The only fluids that come close to its efficiency actually contain pure water.
Pure water has one of the highest heat capacities of any known material. As before, only the water-mixture fluids can compete with pure water in this category. Ethanol comes surprisingly close, but it and the other alcohols here are flammable and have low flash points two excellent reasons to avoid them in everyday water cooling
Water Is King
So we have a clear winner here. Just fill your water cooling loop with water and move on, right?
Nope. The best solutions are rarely that simple. Notice the word pure in the charts?
Not all water is created equal.
Tap Water
This is an easy choice. Its water. Its readily available at a couple of different places in your home. Its almost free.
Its also likely filled with dissolved solids and microorganisms. You dont want either of those in your water loop.
Tap water - don't do it!
Bottled Water
Im talking about drinking water here, the kind youd buy at a convenience store if youre thirsty.
Bottled water can be a surprisingly good option for water cooling. If you avoid anything that calls itself spring water or mountain water, and the label says its purified and has no added ingredients, it will be pure enough to work very well in your water cooling system.
It will also probably cost several times as much as a gallon of distilled water.
Bottled water - excellent but expensive!
Distilled/De-ionized/Demineralized Water
For the sake of this post, Im lumping a few categories together here: distilled water, de-ionized water and demineralized water. These are all made with different processes and are more readily available and less expensive than others in different areas. They all result in extremely pure water thats excellent for liquid PC cooling.
These waters are the best option in terms of which water to use in your coolant. They typically come in larger quantities and are usually inexpensive.
So just fill your loop with one of these and go, right?
Nope. There are no silver bullets. Water has its drawbacks like anything else.
The Problem With Water
Dont go adding that ultrapure water to your reservoir just yet. There are a few more things you should know.
Corrosion
Water is a reactant. It instigates chemical reactions with other substances, especially metals. While the environment of a closed PC water-cooling system is better than the average in terms of chemical reactions, if you run plain water in your cooling system reactions are unavoidable and the result is corrosion.
There are too many variables affecting the process to determine how much time you can expect to pass before corrosion of your metal parts sets in, but it will happen.
Biological Contamination
The water in your PC will always be at least room temperature, and any time you use it the water will be warmer than that. Unless you use your PC in the dark all the time your coolant will also be exposed to light. There are quite a few organisms in the world that love a warm and well-lit liquid environment and will multiply in it quickly.
PC water cooling systems are closed, sealed systems. So how do microorganisms get in there anyway? Typically theyre introduced when the system is open either during initial construction or a maintenance opening of some kind. It takes VERY few of these invisible organisms to make a bio-family and propagate.
Picturing corroded water blocks and hives of stuff in your tubing, water may not sound like the best option any more. How about those glycols?
Molecules of ethylene and propylene glycol. Both can kill you, but one of them you'd have to drown in.
Ethylene and Propylene Glycol
The glycols are actually compounds in the alcohol family and offer decent heat transfer and capacity. Theyre most often used to lower the freeze point of water the antifreeze in your car is a glycol.
The chemical difference between the two glycols were talking about here is minute. The performance differences are minimal as well. The primary difference between ethylene glycol and propylene glycol is toxicity. Ethylene glycol is poisonous. Propylene glycol isnt.
Since were working with the typical PC water cooling setup here, were not worried about freeze point. Given that the glycols have much lower performance numbers than water, why would we use them?
The main reason to use glycols in your coolant is that biological stuff we mentioned earlier. Glycols are biocidal, preventing anything from growing in your cooling system.
Both? Both Is Good.
The best solution to the cons of both pure water and glycol is to use them together. A proper mixture of the two offers higher efficiency then straight glycol and biocidal properties that water doesnt have.
Sadly, the quest doesnt stop here.
The glycols are stronger reactants than water, meaning that introducing them into your cooling loop will speed up that inevitable corrosion we talked about.
Thankfully, industry has solved this problem for us with anti-corrosion additives.
Stop The Corrosion
Anti-corrosion additives come in several different forms and chemistries, and work in different ways. Not long ago, several brands offered anti-corrosive additives for your coolant, but almost all of them have been discontinued in favor of pre-made coolants with additives already in place. In the research for this post I was only able to find two dedicated PC water cooling anti-corrosive additives on the market: Primochills Liquid Utopia and Mayhems Inhibitor. Either of these options will neutralize the effects of corrosion in a water or water/glycol cooling system.
The lack of ready-made industry-specific corrosion additives makes mixing your own coolant difficult thats the reason its been discontinued. There are automotive additives that will serve the purpose, but each of them has its own pros and cons in PC water cooling. If you choose to use these, read the labels and do your research.
For more Glycol Liquid Coolinginformation, please contact us. We will provide professional answers.
The Simple Solution Premade Coolants
After looking at the science, the options and the pros and cons of each, the clear and simple answer is to buy a premade coolant. Fluids made specifically for PC cooling offer good performance along with biocidal and anti-corrosive properties in the right proportions, ready to go in handy quantities in both premixed and concentrate forms. They may seem expensive when you compare them to a gallon of distilled water on the shelf at the store, but when you add in the cost of the additives you also have to buy and the time spent mixing your coolant correctly theyre honestly worth the price.
Just part of the wide range of premixed coolants available.
Premixed coolants are ready to go right out of the bottle. Just fill your loop.
Coolant concentrates are less expensive but must be mixed correctly.
Concentrates are made to be mixed with a specific quantity of distilled water. Read the label and mix them accordingly. Too much water will dilute the additives, reducing their effectiveness. Too little water will reduce its performance.
In an effort to help you decide on a coolant for your system, Ive put together a list of major manufacturers coolants and their primary ingredient. Most brands will guard the specifics of their additive packages pretty closely, but they will all include both biocides and anti-corrosives.
So You Want Some Color?
If youre not into clear coolants, there are a wide range of colors available in premade coolants. They come as transparent, translucent or opaque. Some even have visual effects like shiny particles flowing in them amazing to watch in motion.
If you do decide to use a colored coolant, be aware that it does offer its own set of challenges.
Often the real thing doesnt look exactly like the image in the catalog. Differences in lighting and monitors honestly makes this unavoidable.
Changing colors at a later date means youll have to flush your system very thoroughly at least, and potentially do a complete teardown and cleaning and replace the tubing to get all of the previous color out of it.
PSA - Show Coolants
There are a few coolants on the market that are designed to be used for a short period of time (days at most) and then removed. Examples of these are Vue from Primochill and Aurora from Mayhems. These show coolants contain particulates that are much larger than those found in any other type of coolant. While they do look amazing, the larger size virtually guarantees that these particles will come out of suspension if left in a loop for too long. Examples can be found all over the Internet with a little research, and the results are ugly. The resulting cleanup isnt fun.
This doesnt mean you cant use these coolants for brief periods (shows, LAN events, etc), but plan in advance to get them out of your cooling system in short order,
Make Your Own
Another option for color in your coolant is dye. Dyes are available from several different brands in a range of colors that honestly make anything possible. Some experimentation will be needed, but with the right mix of the right dyes you can make any color you like.
XSPC shares some color combinations possible with their dyes.
Maintenance
You should drain your coolant (and dispose of it properly read the label), flush your cooling system and refill with new coolant on a yearly basis as routine maintenance. If you have issues (color or deposition problems or loss of performance) this may have to be done sooner.
Filling aids can speed up the filling process and lower your frustration level.
Helping Hands
Once youve decided on a coolant its time to put it into your thirsty water loop. Many times an easy-to-reach fillport simply isnt possible in a given system, and Ive found myself having to add coolant in some very awkward positions. Funnels, filling bottles and other filling aids are around to make the job easier.
Not sure about this blue, but the system is awesome!
Consider your options carefully, but since were dealing with the average in-home PC user theres no reason to really have to overthink it. Unless youre planning to experiment, pick a premade coolant (concentrate or premix) in a color you like and get that water loop cooling.
Why You Should Use Distilled Water for Liquid Cooling ...
Liquid cooling is widely regarded as the premiere CPU cooling method because of its high performance and low noise levels. Whether you are a PC hobbyist or a professional in need of a beefy workstation PC, liquid coolers are an essential performance-optimizing component of a computer. When building a PC, you may wonder what liquid is best for your machine, as well as which is most cost-effective. Below you can find information about using distilled water in your liquid cooling loop, alternatives to distilled water, and the pros and cons of each liquid.
Why use a liquid cooler in a PC?
While air cooling is sufficient for most PC users, those that use high-end workstations and gaming computers benefit from the heat distribution liquid cooling provides. The debate between air cooling and liquid cooling is not about performance, but rather price. Consequently, expensive PC builds should make use of liquid coolers because they provide optimal performance for high-end CPUs. Liquid coolers are essential if you plan on overclocking your CPU as the additional performance of the processor will come at a higher temperature. Without proper cooling, the components inside your machine will live shorter lives and suffer from poor performance.
Learn more: Selecting fittings for a PC water cooler
What contaminants harm a PCs liquid cooler?
The three most harmful contaminant-caused types of damage to a PCs liquid cooler are corrosion, microbiological growth, and electrical conductivity.
Corrosion
Corrosion is the oxidization of metal by minerals in water. Corrosion in a PC liquid cooler not only damages the cooler itself, but it can also damage your PCs components due to higher temperatures. Anything that affects the performance of a liquid cooler will raise the temperatures of your CPU. Consequently, your processor will run at higher temperatures than it should. Over time, running at these temperatures can damage your hardware. To combat corrosion, there must be a minimal mineral presence in the coolant inside the cooling loop. Corrosion inhibitors are an essential addition to the liquid inside your cooler.
Microbiological growth
Microbiological growth can happen in a cooling loop when bacteria is introduced into the coolant. Algae growth does not happen quickly, but it can result from contaminated liquid being used for an extended period. Biocide must be added to your coolers coolant to eliminate the risk of bacteria introducing itself to your system.
Electrical conductivity
Electrical conductivity must remain low inside a PC cooling loop for the machine to run effectively. It is not the water itself that damages hardware when the two come into contact, but rather the electricity the water conducts across the component. Inside a cooling loop, high conductivity can interfere with the electricity inside the machine. Minerals that increase electrical conductivity must be removed from water before being added to a PC liquid cooler.
Why use distilled water in a PC liquid cooling system?
Compared to tap water, distilled water is less corrosive, less viscous, and contains fewer microorganisms. The distillation process heats water in a boiling chamber, where contaminants are left behind when the water turns to steam. At the ceiling of a distiller, water collects and cools down. Once the vapor returns to liquid form, it drops into a collection container as distilled water. Water distillation removes microorganisms, minerals, heavy metals, and essentially all contaminants from water. Distilled water is so pure that it is used in laboratories and hospitals, places where high levels of water purity are essential.
Distillation removes impurities from water that can damage your PCs cooling system over time. Corrosive minerals and bacteria are the primary causes of concern in these systems. Using distilled water by itself in your cooling system is not recommended as there is no guarantee that the water will not become contaminated at some point. To combat the risks of corrosion and algae growth, add biocide and a corrosion inhibitor to your water. These are inexpensive additions that greatly protect your cooler from harm.
Learn more: What Is Distilled Water?
Alternatives to distilled water for PC liquid cooling
If you do not have immediate access to distilled water, you may wonder if tap water or other types of water are acceptable to cool your system. Tap water may seem like an appropriate cooling liquid for your PC, but it creates hazards, such as corrosion, microorganisms, and electrical conductivity, that can jeopardize a cooling system over time.
Premade coolants vs distilled water
Premade coolants are popular liquids to use in a PC liquid cooling system, and rightly so. They are made specifically for liquid cooling, meaning they are not corrosive or microbiologically unsafe. A clear coolant is essentially the same as distilled water with biocide and corrosion inhibitors, but the former is a more expensive option. Both premade coolants and distilled water with additives are ideal for liquid cooling systems.
While premade coolants are excellent at cooling your PC, added colors can gunk up your cooling loop, rendering it less effective than it should be. For best results, use a clear coolant in your loop. If your tubing is clear and you want colored coolant, ensure that you clean your cooling loop and change the coolant about once every six months to one year.
Pros of premade coolants
- Require no additives
- Effective at preventing corrosion and microbiological growth
Cons of premade coolants
- More expensive than distilled water
- Color additives can gunk up tubing
Tap water
Tap water is available to most Americans for minimal cost, so it may seem like the logical liquid for your cooling system. Using water straight from the tap can work in a pinch, but it should never be used as the long-term liquid in your system. The minerals present in tap water, even with corrosion inhibitors added, wear away at the metal in your system. Your location greatly affects the mineral content in your water. Tap water in Arizona, California, Indiana, and Texas contains the highest mineral content in the continental United States. Regardless of location, however, you will want to filter or purify your water in some way before adding it to your cooling loop.
An important aspect of liquid coolant is its low conductivity. Liquids that conduct electricity well can interfere with the normal operations of a computer, so they should not be used in a liquid cooling loop. Certain contaminants, such as sodium, calcium, and magnesium, make tap water an excellent conductor of electricity. As a result, tap water should not be used in your PC liquid cooler even in the short term.
Pros of tap water for PC liquid cooling
- Easily available
- Inexpensive
Cons of tap water for PC liquid cooling
- Contains corrosive minerals
- Can promote algae growth over time
- Electrically conductive
Learn more: How does city water treatment work?
Deionized water
Deionized water is water that has undergone the process of ion exchange. This involves the use of positively and negatively charged resin beads to trap negative anions and positive cations. The positively charged resin attracts anions, while the negatively charged resin attracts cations. When water flows through the beads, the resin releases hydrogen ions in exchange for the anions and hydroxide ions in exchange for the cations. The hydrogen (H) and hydroxide (OH) combine to form water (HOH or H2O). This process results in an extremely pure form of water.
When minerals dissolve in water, they create ions. As a result, exchanging these ions removes the corrosion-causing minerals from water. With appropriate additives, deionized water is effective in a PC liquid cooling system. However, deionized water is much more expensive to purchase and slightly less pure than distilled water, so there is no practical reason to prioritize it over distilled water.
Pros of deionized water for PC liquid cooling
- Very pure form of water
- Not corrosive
- Microbiologically safe
- Low electrical conductivity
Cons of deionized water for PC liquid cooling
- More expensive than distilled water
- Contains slightly more contamination than distilled water
Learn more: What is deionized water?
If you have any questions about water and its contaminants, please do not hesitate to contact us.
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